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Dietary Nε-(carboxymethyl)lysine affects cardiac glucose metabolism and myocardial remodeling in mice 被引量:1
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作者 Zhong-Qun Wang Zhen Sun 《World Journal of Diabetes》 SCIE 2022年第11期972-985,共14页
BACKGROUND Myocardial remodeling is a key factor in the progression of cardiovascular disease to the end stage.In addition to myocardial infarction or stress overload,dietary factors have recently been considered asso... BACKGROUND Myocardial remodeling is a key factor in the progression of cardiovascular disease to the end stage.In addition to myocardial infarction or stress overload,dietary factors have recently been considered associated with myocardial remodeling.Nε-(carboxymethyl)lysine(CML)is a representative foodborne toxic product,which can be ingested via daily diet.Therefore,there is a marked need to explore the effects of dietary CML on the myocardium.AIM To explore the effects of dietary CML(dCML)on the heart.METHODS C57 BL/6 mice were divided into a control group and a dCML group.The control group and the dCML group were respectively fed a normal diet or diet supplemented with CML for 20 wk.Body weight and blood glucose were recorded every 4 wk.^(18)F-fluorodeoxyglucose(FDG)was used to trace the glucose uptake in mouse myocardium,followed by visualizing with micro-positron emission tomography(PET).Myocardial remodeling and glucose metabolism were also detected.In vitro,H9C2 cardiomyocytes were added to exogenous CML and cultured for 24 h.The effects of exogenous CML on glucose metabolism,collagen I expression,hypertrophy,and apoptosis of cardiomyocytes were analyzed.RESULTS Our results suggest that the levels of fasting blood glucose,fasting insulin,and serum CML were significantly increased after 20 wk of dCML.Micro-PET showed that ^(18)F-FDG accumulated more in the myocardium of the dCML group than in the control group.Histological staining revealed that dCML could lead to myocardial fibrosis and hypertrophy.The indexes of myocardial fibrosis,apoptosis,and hypertrophy were also increased in the dCML group,whereas the activities of glucose metabolism-related pathways and citrate synthase(CS)were significantly inhibited.In cardiomyocytes,collagen I expression and cellular size were significantly increased after the addition of exogenous CML.CML significantly promoted cellular hypertrophy and apoptosis,while pathways involved in glucose metabolism and level of Cs mRNA were significantly inhibited.CONCLUSION This study reveals that dCML alters myocardial glucose metabolism and promotes myocardial remodeling. 展开更多
关键词 Diet Myocardial remodeling glucose metabolism -(carboxymethyl)lysine C57 BL/6 mice
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葡萄糖转运的胰岛素敏感性以及forskolin,dipyridamole和pentobarbital对三种L6骨骼肌细胞葡萄糖转运的抑制作用
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作者 牛文彦 Philip J Bilan +2 位作者 Michiko Hayashi 笪宇蓉 姚智 《中国科学(C辑)》 CSCD 北大核心 2007年第4期402-409,共8页
用稳定过表达并带有myc表位的葡萄糖转运子1(glucose transporter1,GLUT1)或葡萄糖转运子4(glucose transporter4,GLUT4)的L6骨骼肌细胞株定征GLUT1和GLUT4对胰岛素的响应.所筛选的L6-GLUT1myc细胞克隆分化前后的葡萄糖摄取量均在线性范... 用稳定过表达并带有myc表位的葡萄糖转运子1(glucose transporter1,GLUT1)或葡萄糖转运子4(glucose transporter4,GLUT4)的L6骨骼肌细胞株定征GLUT1和GLUT4对胰岛素的响应.所筛选的L6-GLUT1myc细胞克隆分化前后的葡萄糖摄取量均在线性范围.100nmol/L胰岛素使L6-GLUT1myc和L6-GLUT4myc肌原细胞膜上GLUT1或GLUT4的量分别达到基础组的(1.58±0.01)倍和(1.96±0.11)倍,2-脱氧葡萄糖摄取量分别达到了(1.53±0.09)倍和(1.86±0.17)倍,此作用可被渥曼青霉素(wortmannin)抑制.胰岛素刺激了此2种细胞中的Akt磷酸化.L6-GLUT1myc肌原细胞的葡萄糖摄取量对胰岛素浓度呈剂量依赖性,但与野生型细胞相比,其对胰岛素的敏感性和最大响应没有改变.但L6-GLUT4myc肌原细胞的葡萄糖摄取量对胰岛素的敏感性和最大响应均增加.以前的研究提示毛喉素(forskolin)可能影响胰岛素刺激的GLUT4转位.本研究表明,在L6-GLUT4myc细胞中,毛喉素使胰岛素刺激的葡萄糖摄取减少了65%,此作用是由它对GLUT4的直接抑制而不是由其对GLUT4转位的影响造成的.毛喉素和dipyridamole对GLUT4比对GLUT1有更强的抑制作用,而戊巴比妥(pentobarbital)对GLUT1的抑制作用强于GLUT4.应用这些抑制剂的结果表明、L6肌原细胞中基础状态下和胰岛素刺激状态下的葡萄糖主要由过表达的GLUT1或GLUT4转运.因此,L6-GLUT1myc和L6-GLUT4myc细胞株为筛查对肌肉细胞GLUT1或GLUT4的活性或转位有不同作用的化合物提供了一个平台. 展开更多
关键词 L6骨骼肌细胞株 葡萄糖转运子(glucose transporter GLUT) 胰岛素 2-脱氧葡萄糖摄取
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